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Gas-assisted powder injection molding: A study about residual wall thickness

机译:气体辅助粉末注射成型:关于残留壁厚的研究

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摘要

The effects of processing variables on gas penetration depth and residual wall thickness (RWT) of gas-assisted injection molding (GAIM) parts were investigated for polypropylene (PP) and 316L stainless steel powder feedstock (SUS316). The processing variables were melt temperature, shot size, gas pressure, and gas delay time. By using a Taguchi L9 array, the results were compared with the previous work. Mold material was also investigated by molding with both aluminum and Stereolithography (SLA) mold inserts at varying temperatures. The most significant parameter affecting RWT was melt temperature for PP and gas delay time for SUS316. Additionally for SUS316, it was found that gas penetration depth and RWT were decreased with increasing mold temperature. While both computer simulation and experimental validation were carried out, the results from simulations failed to consider the effect of thermal conductivity differences between SLA and Al cavities due to lack of a coupled analysis capability in its module.
机译:对于聚丙烯(PP)和316L不锈钢粉末原料(SUS316),研究了工艺变量对气体辅助注射成型(GAIM)零件的气体渗透深度和残余壁厚(RWT)的影响。工艺变量是熔体温度,注射量,气体压力和气体延迟时间。通过使用Taguchi L9阵列,将结果与以前的工作进行了比较。还通过在不同温度下使用铝和立体光刻(SLA)模具嵌件进行模制来研究模具材料。影响RWT的最重要参数是PP的熔融温度和SUS316的气体延迟时间。另外,对于SUS316,发现随着模具温度的升高,气体渗透深度和RWT也会降低。在进行计算机仿真和实验验证的同时,由于其模块中缺乏耦合分析能力,仿真结果未能考虑SLA和Al腔之间的导热系数差异的影响。

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